Enteroaggregative Escherichia coli: Frequent, yet underdiagnosed pathotype among E. coli O111 strains isolated from children with gastrointestinal disorders in the Czech Republic

IF 4.5 3区 医学 Q1 MICROBIOLOGY International Journal of Medical Microbiology Pub Date : 2024-06-22 DOI:10.1016/j.ijmm.2024.151628
Klára Schlosserová , Ondřej Daniel , Klára Labská , Vladislav Jakubů , Tereza Stárková , Jan Bílý , Jiří Dresler , Christina Lang , Angelika Fruth , Antje Flieger , Helena Žemličková , Martina Bielaszewska , Monika Havlíčková
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Abstract

Enteroaggregative Escherichia coli (EAEC) strains including those of serogroup O111 are important causes of diarrhea in children. In the Czech Republic, no information is available on the etiological role of EAEC in pediatric diarrhea due to the lack of their targeted surveillance. To fill this gap, we determined the proportion of EAEC among E. coli O111 isolates from children with gastrointestinal disorders ≤ 2 years of age submitted to the National Reference Laboratory for E. coli and Shigella during 2013–2022. EAEC accounted for 177 of 384 (46.1 %) E. coli O111 isolates, being the second most frequent E. coli O111 pathotype. Most of them (75.7 %) were typical EAEC that carried aggR, usually with aaiC and aatA marker genes; the remaining 24.3 % were atypical EAEC that lacked aggR but carried aaiC and/or aatA. Whole genome sequencing of 11 typical and two atypical EAEC O111 strains demonstrated differences in serotypes, sequence types (ST), virulence gene profiles, and the core genomes between these two groups. Typical EAEC O111:H21/ST40 strains resembled by their virulence profiles including the presence of the aggregative adherence fimbriae V (AAF/V)-encoding cluster to such strains from other countries and clustered with them in the core genome multilocus sequence typing (cgMLST). Atypical EAEC O111:H12/ST10 strains lacked virulence genes of typical EAEC and differed from them in cgMLST. All tested EAEC O111 strains displayed stacked-brick aggregative adherence to human intestinal epithelial cells. The AAF/V-encoding cluster was located on a plasmid of 95,749 bp or 93,286 bp (pAAO111) which also carried aggR, aap, aar, sepA, and aat cluster. EAEC O111 strains were resistant to antibiotics, in particular to aminopenicillins and cephalosporins; 88.3 % produced AmpC β-lactamase, and 4.1 % extended spectrum β-lactamase. We conclude that EAEC are frequent among E. coli O111 strains isolated from children with gastrointestinal disorders in the Czech Republic. To reliably assess the etiological role of EAEC in pediatric diarrhea, a serotype-independent, PCR-based pathotype surveillance system needs to be implemented in the future.

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肠道聚集性大肠杆菌:捷克共和国从患有胃肠道疾病的儿童中分离出的大肠杆菌 O111 菌株中常见但诊断不足的病原型。
肠道聚集性大肠杆菌(EAEC)菌株(包括血清群 O111 菌株)是导致儿童腹泻的重要原因。在捷克共和国,由于缺乏有针对性的监测,目前还没有关于 EAEC 在小儿腹泻中的病原学作用的信息。为了填补这一空白,我们确定了 2013-2022 年期间从大肠杆菌和志贺氏杆菌国家参考实验室提交的≤2 岁胃肠道疾病儿童大肠杆菌 O111 分离物中 EAEC 所占的比例。在384例大肠杆菌O111分离物中,EAEC占177例(46.1%),是第二大最常见的大肠杆菌O111病原型。其中大多数(75.7%)是典型的EAEC,携带aggR,通常带有aaiC和aatA标记基因;其余24.3%为非典型EAEC,缺乏aggR,但携带aaiC和/或aatA。对 11 株典型 EAEC O111 和 2 株非典型 EAEC O111 进行的全基因组测序表明,这两组之间在血清型、序列类型(ST)、毒力基因图谱和核心基因组方面存在差异。典型的EAEC O111:H21/ST40菌株与其他国家的此类菌株在毒力特征(包括存在聚集性粘附缘毛V(AAF/V)编码集群)上相似,并在核心基因组多焦点序列分型(cgMLST)中与这些菌株聚类。非典型 EAEC O111:H12/ST10 菌株缺乏典型 EAEC 的毒力基因,在 cgMLST 中与典型 EAEC 存在差异。所有被检测的 EAEC O111 菌株都显示出与人类肠道上皮细胞的叠砖聚集粘附性。AAF/V编码簇位于一个95 749 bp或93 286 bp的质粒(pAAO111)上,该质粒还携带aggR、aap、aar、sepA和aat簇。EAEC O111菌株对抗生素具有耐药性,尤其是对氨基青霉素类和头孢菌素类抗生素具有耐药性;88.3%的菌株产生AmpC β-内酰胺酶,4.1%的菌株产生广谱β-内酰胺酶。我们得出的结论是,在捷克共和国,从患有胃肠道疾病的儿童中分离出的大肠杆菌 O111 菌株中,EAEC 常见。为了可靠地评估 EAEC 在小儿腹泻中的病原学作用,今后需要实施一种独立于血清型、基于 PCR 的病原型监测系统。
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来源期刊
CiteScore
9.70
自引率
0.00%
发文量
18
审稿时长
45 days
期刊介绍: Pathogen genome sequencing projects have provided a wealth of data that need to be set in context to pathogenicity and the outcome of infections. In addition, the interplay between a pathogen and its host cell has become increasingly important to understand and interfere with diseases caused by microbial pathogens. IJMM meets these needs by focussing on genome and proteome analyses, studies dealing with the molecular mechanisms of pathogenicity and the evolution of pathogenic agents, the interactions between pathogens and host cells ("cellular microbiology"), and molecular epidemiology. To help the reader keeping up with the rapidly evolving new findings in the field of medical microbiology, IJMM publishes original articles, case studies and topical, state-of-the-art mini-reviews in a well balanced fashion. All articles are strictly peer-reviewed. Important topics are reinforced by 2 special issues per year dedicated to a particular theme. Finally, at irregular intervals, current opinions on recent or future developments in medical microbiology are presented in an editorial section.
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